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Design Safety Considerations for Water Cooled Small Modular Reactors Incorporating Lessons Learned from the Fukushima Daiichi Accident

机译:结合从福岛第一核电站事故中汲取的教训的水冷小型模块化反应堆的设计安全注意事项

摘要

The global future deployment of advanced nuclear reactors for electricity generation depends udprimarily on the ability of nuclear industries, utilities and regulatory authorities to further udenhance their reliability and economic competitiveness while satisfying stringent safety requirements. The IAEA has a project to help coordinate Member State efforts in the development and deployment of small and medium sized or small modular reactor (SMR) technology. This project aims simultaneously to facilitate SMR technology developers and potential SMR users, particularly States embarking on a nuclear power programme, in identifying key enabling technologies and enhancing capacity building by resolving issues relevant to deployment, including nuclear reactor safety. udThe objective of this publication is to explore common practices for Member States, which will be an essential resource for future development and deployment of SMR technology. The accident at the Fukushima Daiichi nuclear power plant was caused by an unprecedented combination of natural events: a strong earthquake, beyond thude design basis, followed by a series of tsunamis of heights exceeding the design basis tsunami considered in the flood analysis for the site. Consequently, all the operating nuclear power plants and advanced reactors under development, including SMRs, have been incorporating lessons learned from the accident to assure and enhance the performance of the engineered safety features in coping with such external events. udIn response to the Fukushima Daiichi accident, the IAEA established an Action Plan on Nuclear Safety. The preparation of this publication was carried out within the framework of the IAEA Action Plan on effectively utilizing udresearch and development. The main objective of this publication is to present technology developers and useruds with common considerations, approaches and measures for enhancing the defence in depth and operability of water cooled SMR design concepts to cope with extreme natural hazards. Indicative requirements to prevent such an accident from recurring are also provided for States planning to adopt water cooled SMR designs and technologies. udThe IAEA gratefully acknowledges the information on technology and safety aspects provided by SMR design organizations and information regarding technical requirements provided by several Member States. The IAEA officers responsible for this publication were M.H. Subki of the Division of Nuclear Power and M. Kim of the Division of Nuclear Installation Safety.
机译:全球未来用于发电的先进核反应堆的部署主要取决于核工业,公用事业和监管机构在满足严格的安全要求的同时进一步增强其可靠性和经济竞争力的能力。原子能机构有一个项目,旨在帮助成员国协调发展和部署中小型或小型模块化反应堆(SMR)技术的努力。该项目旨在同时帮助SMR技术开发人员和SMR潜在用户(特别是正在启动核电计划的国家)确定关键的使能技术并通过解决与部署有关的问题(包括核反应堆安全)来增强能力建设。 ud本出版物的目的是探索会员国的通用做法,这将是SMR技术未来开发和部署的重要资源。福岛第一核电站的事故是由前所未有的自然事件造成的:超出设计基准的强烈地震,接着是一系列洪水,超出了设计洪水基准所考虑的海啸。现场。因此,正在开发的所有在运核电厂和先进反应堆(包括SMR)都吸收了从事故中汲取的经验教训,以确保并增强工程安全设施应对此类外部事件的性能。 ud针对福岛第一核电站事故,国际原子能机构制定了《核安全行动计划》。在有效利用 udresearch and development的IAEA行动计划的框架内进行了本出版物的准备工作。本出版物的主要目的是向技术开发人员和用户提供通用的考虑因素,方法和措施,以增强水冷SMR设计概念的深度防御和可操作性,以应对极端的自然灾害。还为计划采用水冷SMR设计和技术的国家提供了防止此类事故再次发生的指示性要求。 ud国际原子能机构非常感谢SMR设计组织提供的有关技术和安全方面的信息以及几个成员国提供的有关技术要求的信息。负责本出版物的国际原子能机构军官是M.H.核电司的Subki和核设施安全司的M. Kim。

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